Design and robustness analysis of fuzzy PID controller for automatic voltage regulator system using genetic algorithm

Author:

Dogruer Tufan1ORCID,Can Mehmet Serhat1

Affiliation:

1. Department of Electrical-Electronics Engineering, Tokat Gaziosmanpaşa University, Turkey

Abstract

In this paper, a Fuzzy proportional–integral–derivative (Fuzzy PID) controller design is presented to improve the automatic voltage regulator (AVR) transient characteristics and increase the robustness of the AVR. Fuzzy PID controller parameters are determined by a genetic algorithm (GA)-based optimization method using a novel multi-objective function. The multi-objective function, which is important for tuning the controller parameters, obtains the optimal solution using the Integrated Time multiplied Absolute Error (ITAE) criterion and the peak value of the output response. The proposed method is tested on two AVR models with different parameters and compared with studies in the literature. It is observed that the proposed method improves the AVR transient response properties and is also robust to parameter changes.

Publisher

SAGE Publications

Subject

Instrumentation

Reference47 articles.

1. Akbıyık B, Eksin Güzelkaya İM, et al. (2005) Evaluation of the performance of various fuzzy PID controller structures on benchmark systems. In: ELECO 2005, 4th international conference on electrical and electronics engineering, Bursa, Turkey, https://www.emo.org.tr/ekler/a638ebf561da3b2_ek.pdf

2. Sugeno fuzzy PID tuning, by genetic-neutral for AVR in electrical power generation

3. PID control system analysis and design

4. FOPID controller with fractional filter for an automatic voltage regulator

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